We present a two-dimensional description of the light scattering by collective atomic recoil for a configuration in which the pump and the scattered beams are orthogonal and the atoms are in a definite state of momentum. In the quantum recoil limit and for single-photon scattering, the analytical solution can be found explicitly, both in the good-cavity limit (i.e., with no radiation losses) and in the superradiant regime (without cavity) observed in the MIT experiment.

Two-dimensional quantum theory of collective light scattering from Bose-Einstein condensates / N. Piovella. - In: LASER PHYSICS. - ISSN 1054-660X. - 13:4(2003), pp. 611-618. ((Intervento presentato al 11. convegno International Laser Physics Workshop (LPHYS 02) tenutosi a Bratislava nel 2002.

Two-dimensional quantum theory of collective light scattering from Bose-Einstein condensates

N. Piovella
2003

Abstract

We present a two-dimensional description of the light scattering by collective atomic recoil for a configuration in which the pump and the scattered beams are orthogonal and the atoms are in a definite state of momentum. In the quantum recoil limit and for single-photon scattering, the analytical solution can be found explicitly, both in the good-cavity limit (i.e., with no radiation losses) and in the superradiant regime (without cavity) observed in the MIT experiment.
Settore FIS/03 - Fisica della Materia
2003
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/2434/751970
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